Fluctuation spectroscopy of granularity in superconducting structures
arXiv:0707.4237 · doi:10.1103/PhysRevLett.100.117003
Abstract
We suggest to use `fluctuation spectroscopy' as a method to detect granularity in a disordered metal close to a superconducting transition. We show that with lowering temperature the resistance of a system of relatively large grains initially grows due to the fluctuation suppression of the one-electron tunneling but decreases with further lowering due to the coherent charge transfer of the fluctuation Cooper pairs. Under certain conditions, such a maximum in turns out to be sensitive to weak magnetic fields due to a novel Maki -- Thompson type mechanism.
A final version, as published; the introduction and summary are considerably revised